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TM4C129ENCPDTT3

  • In Stock: 250000
  • Available: 5603

Reference Price(In US Dollars)

QtyUnit PriceExt.Price
1+US $169.50000US $169.50
10+US $146.90000US $1469.00
30+US $133.34000US $4000.20
100+US $122.04000US $12204.00
500+US $118.65000US $59325.00
1000+US $113.00000US $113000.00

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Description

The TM4C129ENCPDTT3 is a microcontroller from Texas Instruments, part of the Tiva C Series. This device is designed for high-performance applications requiring advanced processing capabilities, extensive connectivity options, and robust features. Here’s a detailed description of its key characteristics:

General Overview

  • Architecture: The TM4C129ENCPDTT3 is based on the ARM Cortex-M4 architecture, which provides a 32-bit RISC (Reduced Instruction Set Computing) core. This architecture is known for its efficiency and performance, making it suitable for a wide range of embedded applications.
  • Core Speed: The microcontroller operates at a maximum clock speed of 120 MHz, allowing for fast processing and execution of complex algorithms.

Memory

  • Flash Memory: It features 1 MB of flash memory, which is used for storing the program code and non-volatile data. This ample memory size supports large applications and firmware updates.
  • SRAM: The device includes 256 KB of SRAM, providing sufficient space for runtime data and stack operations.
  • EEPROM: The TM4C129ENCPDTT3 also has a small amount of EEPROM, which is useful for storing configuration settings and other critical data that must persist through power cycles.

Connectivity

  • Ethernet: One of the standout features of this microcontroller is its integrated Ethernet MAC, which supports 10/100 Mbps connections. This makes it ideal for IoT applications and devices that require network connectivity.
  • USB: The device includes USB 2.0 support, allowing for both host and device modes, facilitating easy connection to peripherals and other devices.
  • Serial Communication: It offers multiple UART, I2C, and SPI interfaces, enabling communication with a variety of sensors, displays, and other components.
  • CAN Bus: The TM4C129ENCPDTT3 supports Controller Area Network (CAN) communication, which is essential for automotive and industrial applications.

Peripherals

  • ADC: The microcontroller is equipped with a 12-bit Analog-to-Digital Converter (ADC) with multiple channels, allowing for precise analog signal processing.
  • Timers: It includes several general-purpose timers and PWM (Pulse Width Modulation) outputs, which are useful for timing applications and motor control.
  • GPIO: The device has a rich set of General-Purpose Input/Output (GPIO) pins, which can be configured for various functions, including digital input/output, analog input, and alternate functions.

Power Management

  • Operating Voltage: The TM4C129ENCPDTT3 operates at a voltage range of 1.8V to 3.6V, making it suitable for battery-powered applications.
  • Low Power Modes: It features several low-power modes to help extend battery life in portable applications, allowing the device to enter sleep or hibernation states when not in use.

Package and Dimensions

  • Package Type: The TM4C129ENCPDTT3 is available in a LQFP (Low-Profile Quad Flat Package) with 64 pins, which provides a compact footprint suitable for space-constrained designs.
  • Dimensions: The package dimensions are typically around 10 mm x 10 mm, but specific dimensions can vary based on the exact package type.

Applications

The TM4C129ENCPDTT3 is well-suited for a variety of applications, including:

  • Industrial automation
  • Smart home devices
  • Automotive systems
  • Medical devices
  • IoT gateways and edge devices

Development Support

Texas Instruments provides extensive development support for the TM4C129ENCPDTT3, including software libraries, development kits, and a robust ecosystem of tools to facilitate rapid prototyping and application development.

In summary, the TM4C129ENCPDTT3 is a versatile and powerful microcontroller that combines high performance, extensive connectivity options, and a rich set of peripherals, making it an excellent choice for a wide range of embedded applications.

Alternatives

Functional Equivalent (FE) materials, including Fused Filament Fabrication (FFF) form, assembly, and functionally compatible substitute materials.

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